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- Ti-V基儲氫合金Ti-V-based hydrogen storage alloy
- TiCr基儲氫合金TiCr based hydrogen storage alloys
- 非晶態(tài)鎂基儲氫合金amorphous Mg-based hydrogen storage
- V基儲氫合金V-based storing hydrogen alloy
- 稀土-Mg-Ni基儲氫合金rare-earths-Mg-Ni-base hydrogen storage alloy
- V基貯氫合金V based hydrogen storage alloys
- V基固溶體合金V-based solid solution
- 胺基amidocyanogen
- 確立以農業(yè)為基儲為農業(yè)服務(wù)的思想。We should establish the concept that agriculture is the foundation of the national economy and that industry must serve it.
- Ti-V基固溶體合金/AB_x(x=3,3.5,5)復合貯氫合金的電化學(xué)性能研究An Investigation on the Electrochemical Hydrogen Storage of the Ti-V Based BCC Alloys Surfaced with AB_x (x=3,3.5,5)
- 相互作用勢對模擬計算單壁碳納米管物理吸附儲氫的影響The influence of interaction potentials on the computer simulation of hydrogen physisorption in singled-walled carbon nanotubes
- 一、確立以農業(yè)為基儲為農業(yè)服務(wù)的思想。We should establish the concept that agriculture is the foundation of the national economy and that industry must serve it.
- 循環(huán)伏安法測定氫在貯氫合金中的擴散系數Determination of the Hydrogen Diffusion Coefficient in Alloy by Cyclic Voltammetry
- X射線(xiàn)衍射和掃描電鏡分析表明,鑄態(tài)合金均由體心立方(bcc)結構的V基固溶體主相和bcc結構的TiNi基第二相組成;X-ray diffraction and scanning electron microscope analysis show that the as-cast alloys consist of V-based solid solution main phase and TiNi-based secondary phase with bcc structure.
- 新型能源載體-儲氫材料研究進(jìn)展Development of research on a kind of new energy carrier-hydrogen storage materials
- 歷史證明,冷戰時(shí)期以軍事聯(lián)盟為基儲以增加軍備為手段的安全觀(guān)念和體制不能營(yíng)造和平。History has proved that the concepts and systems of security with military alliances as the basis and increasing military might as the means could not be conducive to peace during the cold war.
- 采用MA制得的Mg_(1.9)Al_(0.1)Ni儲氫合金具有較高的活性和高儲氫量,對PCT結果進(jìn)行計算。Mg_(1.9)Al_(0.1)Ni ternary alloy was prepared by MA can absorb 2.67 mass%25 and desorb 2.54 mass%25H at 553K less than 100s.
- 1,2-亞二氫苊基acenaphthenylene
- XRD和FESEM-EDS分析測試結果表明:Ti0.25V0.34Nb0.01Cr0.10Ni0.30電極合金由BCC結構的V基固溶體主相和少量的TiNi基第二相組成,其中,V基固溶體主相為樹(shù)枝晶形狀,TiNi基第二相呈網(wǎng)格狀圍繞著(zhù)樹(shù)枝晶。Based on XRD and FESEM-EDS analysis, the alloy is mainly composed of V-based solid solution with BCC structure and TiNi-based secondary phase. V-based solid solution phase looks as a dendrite surrounded by TiNi-based secondary phase. The discharge capacity increases with increasing temperature in a wider temperature region from 303 K to 343 K.
- 硫氫基hydrosulfide group